Absorption Characteristics of Cement Combination Concrete Containing Portland Cement, fly ash, and Metakaolin

Folagbade Samuel Olufemi
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引用次数: 12

Abstract

The resistance to water penetration of cement combination concretes containing Portland cement (PC), fly ash (FA), and metakaolin (MK) have been investigated at different water/cement (w/c) ratios, 28-day strengths, and depths of water penetration using their material costs and embodied carbon-dioxide (eCO2) contents. Results revealed that, at equal w/c ratio, eCO2 content reduced with increasing content of FA and MK. MK contributed to the 28-day strengths more than FA. Compared with PC, FA reduced cost and increased the depth of water penetration, MK increased cost and reduced the depth of water penetration, and their ternary combinations become beneficial. At equal strengths and levels of resistance to water penetration, most of the cement combination concretes are more environmentally compatible and costlier than PC concrete. Only MK binary cement concretes with 10%MK content or more and ternary cement concretes at a total replacement level of 55% with 10%MK content or more have higher resistance to water penetration than PC concrete.
硅酸盐水泥、粉煤灰、偏高岭土复合混凝土的吸收特性
研究了硅酸盐水泥(PC)、粉煤灰(FA)和偏高岭土(MK)在不同水灰比(w/c)、28天强度和水侵深度下的抗水渗透性能,并利用其材料成本和蕴含的二氧化碳(eCO2)含量对水泥组合混凝土的抗水渗透性能进行了研究。结果表明,在w/c比相同的情况下,随着FA和MK含量的增加,eCO2含量降低,MK对28天强度的贡献大于FA。与PC相比,FA降低了成本,增加了侵水深度,MK增加了成本,减小了侵水深度,三者的三元组合是有利的。在同等强度和抗水渗透水平下,大多数水泥组合混凝土比PC混凝土更环保,更昂贵。只有MK含量在10%及以上的MK二元水泥混凝土和总替代水平为55%且MK含量在10%及以上的三元水泥混凝土具有比PC混凝土更高的抗水渗透能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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15
审稿时长
24 weeks
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